会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明授权
    • Charge redistribution digital-to-analog converter
    • 电荷再分配数模转换器
    • US08390502B2
    • 2013-03-05
    • US13069966
    • 2011-03-23
    • Ronald Kapusta
    • Ronald Kapusta
    • H03M1/12
    • H03M1/0863H03M1/804H03M1/806
    • Embodiments of the present disclosure may provide a charge redistribution DAC with an on-chip reservoir capacitor to provide charges to the DAC in lieu of traditional external reference voltages. The DAC may include the on-chip reservoir capacitor having a first plate and a second plate, an array of DAC capacitors to generate a DAC output, and an array of switches controlled by a DAC input word to couple the DAC capacitors to the reservoir capacitor. The charge redistribution DAC may further comprise a first switch connecting the first plate to an external terminal for a first external reference voltage, and a second switch connecting the second plate to an external terminal for a second external reference voltage. One embodiment may provide an ADC that includes the charge redistribution DAC.
    • 本公开的实施例可以提供具有片上存储电容器的电荷再分配DAC,以代替传统的外部参考电压来向DAC提供电荷。 DAC可以包括具有第一板和第二板的片上储存电容器,用于产生DAC输出的DAC电容器阵列,以及由DAC输入字控制的开关阵列,以将DAC电容器耦合到储存器电容器 。 电荷再分配DAC还可以包括将第一板连接到用于第一外部参考电压的外部端子的第一开关和将第二板连接到外部端子用于第二外部参考电压的第二开关。 一个实施例可以提供包括电荷再分配DAC的ADC。
    • 7. 发明授权
    • Successive approximation A/D converter
    • 连续近似A / D转换器
    • US08284093B2
    • 2012-10-09
    • US12928122
    • 2010-12-03
    • Hirotaka Kawai
    • Hirotaka Kawai
    • H03M1/12
    • H03M1/0845H03M1/468H03M1/68H03M1/785H03M1/806
    • A successive approximation A/D converter, includes a reference voltage generation circuit, a sample/hold circuit, a D/A converter circuit, a comparator, and a control circuit. A potential difference between the comparison target voltage generated by the D/A converter circuit and the internal analog voltage is applied to one input terminal of the comparator through a first signal line, and the reference voltage generation circuit is connected to the other input terminal of the comparator through a second signal line and a switch. Capacitive elements are disposed between the high potential power supply and the second signal line, and between the second signal line and the low potential power supply, respectively. The control circuit turns ON the switch to charge the first and second capacitive elements during a period when the sample/hold circuit samples and holds the internal analog voltage and turns OFF the switch in response to end of the period.
    • 逐次逼近A / D转换器包括参考电压产生电路,采样/保持电路,D / A转换器电路,比较器和控制电路。 由D / A转换器电路产生的比较目标电压与内部模拟电压之间的电位差通过第一信号线施加到比较器的一个输入端,并且参考电压产生电路连接到 比较器通过第二条信号线和一个开关。 电容元件分别设置在高电位电源和第二信号线之间以及第二信号线和低电位电源之间。 在采样/保持电路取样并保持内部模拟电压并响应于该周期结束而关断开关的时段期间,控制电路导通开关以对第一和第二电容元件充电。
    • 9. 发明申请
    • Successive aproximation A/D Converter
    • 连续近似A / D转换器
    • US20110133963A1
    • 2011-06-09
    • US12928122
    • 2010-12-03
    • Hirotaka Kawai
    • Hirotaka Kawai
    • H03M1/02
    • H03M1/0845H03M1/468H03M1/68H03M1/785H03M1/806
    • A successive approximation A/D converter, includes a reference voltage generation circuit, a sample/hold circuit, a D/A converter circuit, a comparator, and a control circuit. A potential difference between the comparison target voltage generated by the D/A converter circuit and the internal analog voltage is applied to one input terminal of the comparator through a first signal line, and the reference voltage generation circuit is connected to the other input terminal of the comparator through a second signal line and a switch. Capacitive elements are disposed between the high potential power supply and the second signal line, and between the second signal line and the low potential power supply, respectively. The control circuit turns ON the switch to charge the first and second capacitive elements during a period when the sample/hold circuit samples and holds the internal analog voltage and turns OFF the switch in response to end of the period.
    • 逐次逼近A / D转换器包括参考电压产生电路,采样/保持电路,D / A转换器电路,比较器和控制电路。 由D / A转换器电路产生的比较目标电压与内部模拟电压之间的电位差通过第一信号线施加到比较器的一个输入端,并且参考电压产生电路连接到 比较器通过第二条信号线和一个开关。 电容元件分别设置在高电位电源和第二信号线之间以及第二信号线和低电位电源之间。 在采样/保持电路取样并保持内部模拟电压并响应于该周期结束而关断开关的时段期间,控制电路导通开关以对第一和第二电容元件充电。